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  • Book
    Roxana Savin, Gustavo A. Slafer, editors.
    Summary: This book offers a comprehensive and state-of-the-art source reference for understanding the functions and mechanisms responsible for yield and quality determination under a range of conditions. By uncovering relationships and challenges of successful and scalable crop management and breeding, this volume addresses the challenges of environmentally sound production of bulk and quality food, fodder, fiber, and energy which are of ongoing international concern. Contemporary agriculture and crop management confronts the challenge of increasing demand in terms of quantitative and qualitative production targets. These targets have to be achieved against a background of climate change, including soil and water scarcity and higher temperatures, and the environmental and social aspects of agricultural sustainability. This book views crop production as an active source of methods, theories, ideas, and tools for application in genetic improvement and agronomy.

    Contents:
    Agroecological Basis for Managing Biotic Constraints
    Agronomic Interactions with CO2 Sequestration
    Crop Development Related to Temperature and Photoperiod
    Crop Radiation Capture and Use Efficiency
    Crop Responses to Available Soil Water
    Crop Responses to Nitrogen
    Crop Science and Technology, Introduction
    Cropping Systems: Shaping Nature
    Fertilizer Science and Technology
    Genotype by Environment Interaction and Adaptation
    Improving Grain Quality in Oil and Cereal Crops
    Integrated Pest Management
    Irrigation Management for Efficient Crop Production
    Lodging Resistance in Cereals
    Marker-Assisted Breeding in Crops
    Phenotyping: New Crop Breeding Frontier
    Plant Breeding Under a Changing Climate
    Roots and Uptake of Water and Nutrients
    Seed Dormancy and Agriculture and Physiology
    Simulation Models as Tools for Crop Management
    Source-sink Relationships in Cereals and Legumes
    Spatial Crop Structure in Agricultural Systems
    Heat Tolerance for Sustainable Productivity.
    Digital Access Springer 2019